Allelic variation of terpene synthases drives terpene diversity in the wild species of the Freesia genus

萜烯 生物 植物 等位基因 遗传多样性 遗传学 基因 生物化学 人口 社会学 人口学
作者
Tingting Bao,Shadrack Kimani,Yueqing Li,Hongjie Li,Song Yang,Jia Zhang,Qiuyue Wang,Zhaoxuan Wang,Guogui Ning,Li Wang,Xiang Gao
出处
期刊:Plant Physiology [Oxford University Press]
卷期号:192 (3): 2419-2435 被引量:7
标识
DOI:10.1093/plphys/kiad172
摘要

Terpene synthases (TPSs) play pivotal roles in conferring the structural diversity of terpenoids, which are mainly emitted from flowers, whereas the genetic basis of the release of floral volatile terpenes remains largely elusive. Though quite similar in sequence, TPS allelic variants still function divergently, and how they drive floral terpene diversity in closely related species remains unknown. Here, TPSs responsible for the floral scent of wild Freesia species were characterized, and the functions of their natural allelic variants, as well as the causal amino acid residues, were investigated in depth. Besides the 8 TPSs previously reported in modern cultivars, 7 additional TPSs were functionally evaluated to contribute to the major volatiles emitted from wild Freesia species. Functional characterization of allelic natural variants demonstrated that allelic TPS2 and TPS10 variants changed the enzymatic capacity while allelic TPS6 variants drove the diversity of floral terpene products. Further residue substitution analysis revealed the minor residues determining the enzyme catalytic activity and product specificity. The clarification of TPSs in wild Freesia species reveals that allelic TPS variants evolved differently to determine the interspecific floral volatile terpenes in the genus and might be used for modern cultivar improvement.
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